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INDP US Equity

Indaptus Therapeutics, Inc.Health Care · Pharmaceutical Preparations · CIK 1857044 · FY ends Dec 31
$0.94
+0.00 (+0.42%)
USD · as of 2026-08-19 · marketstack

INDP · 10-K · period ended 2023-12-31

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filed 2024-03-13 · EDGAR original ↗

Our rendering of the filing — original pagination and typography are not reproduced, and tables are reduced to their short label cells (the figures live on FA). Nothing is summarized: every line below is the filing's own text.

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UNITED

STATES

SECURITIES

AND EXCHANGE COMMISSION

Washington,

D.C. 20549

FORM

10-K

(Mark

One)

ANNUAL REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the fiscal year ended December 31, 2023

OR

TRANSITION REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the transition period from to

Commission

File Number001-40652

INDAPTUS

THERAPEUTICS, INC.

(Exact

name of Registrant as specified in its Charter)

3 Columbus Circle 15th Floor New York, NY 10019

(Address of principal executive offices) (Zip Code)

Registrant’s

telephone number, including area code: +(646)427-2727

Securities

registered pursuant to Section 12(b) of the Act:

Common stock, par value $0.01 INDP Nasdaq Capital Market

Securities

registered pursuant to Section 12(g) of the Act:

None

Indicate

by check mark if the Registrant is a well-known seasoned issuer, as defined in Rule 405 of the Securities Act. YES ☐ NO ☒

Indicate

by check mark if the Registrant is not required to file reports pursuant to Section 13 or 15(d) of the Act. YES ☐ NO ☒

Indicate

by check mark whether the Registrant: (1) has filed all reports required to be filed by Section 13 or 15(d) of the Securities Exchange

Act of 1934 during the preceding 12 months (or for such shorter period that the Registrant was required to file such reports), and (2)

has been subject to such filing requirements for the past 90 days. YES ☒ NO ☐

Indicate

by check mark whether the Registrant has submitted electronically, every Interactive Data File required to be submitted pursuant to Rule

405 of Regulation S-T (§232.405 of this chapter) during the preceding 12 months (or for such shorter period that the Registrant

was required to submit such files). YES ☒ NO ☐

Indicate

by check mark whether the registrant is a large accelerated filer, an accelerated filer, a non-accelerated filer, smaller reporting company,

or an emerging growth company. See the definitions of “large accelerated filer,” “accelerated filer,” “smaller

reporting company,” and “emerging growth company” in Rule 12b-2 of the Exchange Act.

Large accelerated filer ☐ Accelerated filer ☐

Non-accelerated filer ☒ Smaller reporting company ☒

Emerging growth company ☐

If

an emerging growth company, indicate by check mark if the registrant has elected not to use the extended transition period for complying

with any new or revised financial accounting standards provided pursuant to Section 13(a) of the Exchange Act. ☐

Indicate

by check mark whether the registrant has filed a report on and attestation to its management’s assessment of the effectiveness

of its internal control over financial reporting under Section 404(b) of the Sarbanes-Oxley Act (15 U.S.C. 7262(b)) by the registered

public accounting firm that prepared or issued its audit report.☐

If

securities are registered pursuant to Section 12(b) of the Act, indicate by check mark whether the financial statements of the registrant

included in the filing reflect the correction of an error to previously issued financial statements. ☐

Indicate

by check mark whether any of those error corrections are restatements that required a recovery analysis of incentive-based compensation

received by any of the registrant’s executive officers during the relevant recovery period pursuant to § 240.10D-1(b). ☐

Indicate

by check mark whether the Registrant is a shell company (as defined in Rule 12b-2 of the Exchange Act). YES ☐ NO☒

At

June 30, 2023, the last business day of the Registrant’s most recently completed second fiscal quarter, the aggregate market value

of the voting and non-voting common equity held by non-affiliates of the Registrant was $13,286,909.

The

number of shares of Registrant’s common stock outstanding as of March 12, 2024 was 8,538,883.

DOCUMENTS

INCORPORATED BY REFERENCE

Portions

of the Registrant’s definitive proxy statement for its 2024 Annual Meeting of Stockholders, which the Registrant intends to file

pursuant to Regulation 14A with the Securities and Exchange Commission not later than 120 days after December 31, 2023, are incorporated

by reference into Part III of this Annual Report on Form 10-K.

Table of Contents Page

PART I

Item 1. Business 7

Item 1A. Risk Factors 23

Item 1B. Unresolved Staff Comments 58

Item 1C. Cybersecurity 58

Item 2. Properties 59

Item 3. Legal Proceedings 59

Item 4. Mine Safety Disclosures 59

PART II

Item 6. [Reserved] 60

Item 7A. Quantitative and Qualitative Disclosures About Market Risk 66

Item 8. Financial Statements and Supplementary Data F-1

Item 9A. Controls and Procedures 67

Item 9B. Other Information 67

Item 9C. Disclosure Regarding Foreign Jurisdictions that Prevent Inspections 67

PART III

Item 10. Directors, Executive Officers and Corporate Governance 68

Item 11. Executive Compensation 71

Item 14. Principal Accountant Fees and Services 72

PART IV

Item 15. Exhibits and Financial Statement Schedules 72

ABOUT

THIS ANNUAL REPORT

All

references to “we,” “us,” “our,” “Indaptus Therapeutics”, “Indaptus”, “the

Company” and “our company”, in this Annual Report on Form 10- K, or our Annual Report, are to Indaptus Therapeutics,

Inc. (formerly Intec Parent, Inc.) and, where appropriate, its consolidated subsidiaries, Intec Pharma Ltd. and Decoy Biosystems, Inc.

All references to “common stock” and “share capital” refer to common stock and share capital of Indaptus. Our

historical results do not necessarily indicate our expected results for any future periods. Any discrepancies in any table between totals

and sums of the amounts listed are due to rounding. Unless otherwise indicated, or the context otherwise requires, references in this

Annual Report to financial and operational data for a particular year refer to the fiscal year of our Company ended December 31 of that

year.

EXPLANATORY

NOTE

Market

data and certain industry data and forecasts used throughout this Annual Report were obtained from market research databases, consultant

surveys commissioned by us, publicly available information, reports of governmental agencies and industry publications and surveys. Industry

surveys, publications, consultant surveys commissioned by us and forecasts generally state that the information contained therein has

been obtained from sources believed to be reliable. We have relied on certain data from third-party sources, including internal surveys,

industry forecasts and market research, which we believe to be reliable based on our management’s knowledge of the industry. Statements

as to our market position are based on the most currently available data. While we are not aware of any misstatements regarding the industry

data presented in this Annual Report, our estimates involve risks and uncertainties and are subject to change based on various factors,

including those discussed under Part I. Item 1A. “Risk Factors” in this Annual Report.

CAUTIONARY

NOTE REGARDING FORWARD-LOOKING STATEMENTS

This

Annual Report contains, and management may make, certain forward-looking statements within the meaning of the Private Securities Litigation

Reform Act of 1995. All statements other than statements of historical facts contained in this Annual Report on Form 10-K are forward-looking

statements. In some cases, forward-looking statements can be identified by the use of terms such as “believe,” “expect,”

“intend,” “plan,” “may,” “should,” “anticipate,” “could,” “might,”

“seek,” “target,” “will,” “project,” “forecast,” “continue” or

their negatives or variations of these words or other comparable words. These statements include, without limitation, our statements

about: our product candidates’ development, including the timing and design of the Phase 1 clinical trial of Decoy20; our expectations

regarding the recommended Phase 2 dose for subsequent multi-dosing and combination studies and related timing; the anticipated effects

of our product candidates; our plans to develop and commercialize our product candidates; the market potential and treatment potential

of our product candidates, including Decoy20; our commercialization, marketing and manufacturing capabilities and strategy; our expectations

about the willingness of healthcare professionals to use our product candidates; our general business strategy and the plans and objectives

of management for future operations; our research and development activities and costs; our future results of operations and condition;

the sufficiency of our cash and cash equivalents to fund our ongoing activities; the impact of current macroeconomic conditions on our

operations, ability to access capital, and liquidity; and any impact of a pandemic, epidemic or other future health crisis, such as the

COVID-19 pandemic on our business.

The

forward-looking statements in this Annual Report are only predictions and are based largely on our current expectations and projections

about future events and financial trends that we believe may affect our business, financial condition and results of operations. These

forward-looking statements speak only as of the date of this Annual Report and are subject to a number of known and unknown risks, uncertainties

and assumptions, including those described under the sections in this Annual Report entitled “Summary Risk Factors,” Part

I. Item 1A. “Risk Factors” and Part II. Item 7. “Management’s Discussion and Analysis of Financial Condition

and Results of Operations” and elsewhere in this Annual Report.

Because

forward-looking statements are inherently subject to risks and uncertainties, some of which cannot be predicted or quantified and some

of which are beyond our control, you should not rely on these forward-looking statements as predictions of future events. The events

and circumstances reflected in our forward-looking statements may not be achieved or occur and actual results could differ materially

from those projected in the forward-looking statements. Moreover, we operate in an evolving environment. New risk factors and uncertainties

may emerge from time to time, and it is not possible for management to predict all risk factors and uncertainties.

Except

as required by applicable law, we do not plan to publicly update or revise any forward-looking statements contained herein, whether as

a result of any new information, future events, changed circumstances or otherwise. We intend the forward-looking statements contained

in this Annual Report to be covered by the safe harbor provisions for forward-looking statements contained in Section 27A of the Securities

Act of 1933, as amended, or the Securities Act, and Section 21E of the Securities Exchange Act of 1934, as amended, or the Exchange Act.

Summary

Risk Factors

The

principal factors and uncertainties that make investing in our common stock risky, include, among others:

PART

I

Item

1. Business.

Overview

We

are a clinical biotechnology company developing a novel and patented systemically-administered anti-cancer and anti-viral immunotherapy.

We have evolved from more than a century of immunotherapy advances. Our approach is based on the hypothesis that efficient activation

of both innate and adaptive immune cells and associated anti-tumor and anti-viral immune responses will require a multi-targeted package

of immune system activating signals that can be administered safely intravenously. Our patented technology is composed of single strains

of attenuated and killed, non-pathogenic, Gram-negative bacteria, designed to have reduced i.v. toxicity, but largely uncompromised ability

to prime or activate many of the cellular components of innate and adaptive immunity. This approach has led to broad anti-tumor and anti-viral

activity in preclinical models, including durable anti-tumor response synergy observed with each of five different classes of existing

agents, including checkpoint therapy, targeted antibody therapy and low-dose chemotherapy. Tumor eradication by our technology has demonstrated

activation of both innate and adaptive immunological memory and, importantly, did not require provision of or targeting a tumor antigen

in preclinical models. We have carried out successful current Good Manufacturing Practice (cGMP) manufacturing of our lead clinical candidate,

Decoy20, and completed other Investigational New Drug Application (IND)-enabling studies.

In

May 2022, the U.S. Food and Drug Administration, or the FDA, allowed us to proceed under our IND for a Phase 1 clinical trial in patients

with advanced solid tumors where currently approved therapies have failed, and in December 2022, we initiated this Phase 1 clinical trial

which is an open label, multi-center, dose escalation and expansion, single arm (monotherapy) study conducted in 2 parts. The Phase 1

study has begun with a single dose escalation, which is planned to be followed by an expansion part with continuous weekly administration

of Decoy20. The study is enrolling patients with advanced/metastatic solid tumors, who have exhausted approved treatment options. The

study’s objectives are to assess the safety and tolerability of Decoy20, to determine the maximum tolerated dose and recommended

Phase 2 dose, as well as to assess Decoy20 pharmacokinetics (PK), pharmacodynamics and clinical activity. The primary endpoint of the

study is incidence, relatedness and severity of adverse events and treatment-emergent adverse events and determining the number of subjects

per cohort with dose limiting toxicity-based adverse events. Secondary endpoints include the incidence of anti-drug antibodies and neutralizing

antibodies pre- and post-treatment, change in Decoy20 PK parameters over time, objective response rate in subjects with measurable disease

and duration of response. In August 2023, we completed the first cohort of patients who received a single dose in Part 1 of the Phase

1 clinical trial. Four patients were enrolled and evaluable in the first cohort. Overall, patients experienced symptoms or adverse events

(AEs) that were short-lived and consistent with the mechanism of action of Decoy20. In September 2023, we advanced into the second cohort

of the Phase 1 clinical trial after receiving authorization from the Safety Review Committee. In early March 2024, we completed the second

cohort of patients who received a single dose in Part 1 of the Phase 1 clinical trial and, following authorization from the Safety Review

Committee, advanced into the multi-dosing cohort of the Phase 1 clinical trial. The second cohort dose is a reduction from the dosing

in the first cohort based on the significant pharmacodynamic effect seen with the first cohort and anticipated optimal Decoy20 safety

profile for both multi-dosing and combination approaches.

Unlike

many competitor products, our technology does not depend on targeting with or to a specific antigen, providing broad potential across

multiple indications. Our products are designed to have a much shorter half-life and produce less systemic exposure than small molecule,

antibody or human cell-based therapies, potentially reducing the risk of non-specific auto-immune reactions. Our technology has produced

single agent activity and/or combination therapy-based durable responses in lymphoma, hepatocellular, colorectal and pancreatic tumors

and has also showed activity against hepatitis B virus (HBV) and HIV infection in standard preclinical models. Our target indications

include, but are not limited to, colorectal, hepatocellular (± HBV), bladder, cervical and pancreatic carcinoma, which according

to GLOBOCAN 2020, account in the aggregate for 23% of yearly cancer cases and over 28% of yearly cancer deaths world-wide.

Historically,

we have operated virtually with a team of highly experienced consultants and advisors, carrying out research and development at contract

research organizations (CROs). We have developed patented treatment methods (and associated patented compositions) for attenuation and

killing of non-pathogenic, Gram-negative bacteria (34 issued or granted patents). Since our inception, we have funded our operations

primarily through public and private offerings of our equity securities.

Background

Approved

immunotherapies, such as Interluekin-2, Interferon-alpha and the more recently approved “checkpoint” and CAR-T therapies

produce durable responses in a few percent to about fifty percent of patients across about a dozen out of over one hundred different

types of cancer. Although checkpoint therapies are able to effectively cure many previously incurable patients, only about 15% of patients

receiving this type of therapy respond. The main limitation of existing immunotherapies is that they each activate only one or a small

number of key steps in either the innate or adaptive immune system, but there is general agreement that highly efficient cancer immunotherapy

will require activation of both innate and adaptive immunity. The human body’s innate and adaptive immune systems are each capable

of cell-mediated destruction of tumors if the tumor cells are recognized as foreign or damaged. Activation of innate and adaptive responses

is also dependent on immune cells sensing the presence of “danger.” The most potent immune cell activating danger signals

are released by bacteria and viruses in the setting of infection, and include agonists of immune cell receptors, such as Toll-Like (TLR),

NOD and STING. Bacterial danger signals, including TLR agonists are called pathogen-associated molecular patterns (PAMPs) and can activate

both innate and adaptive immune cells, including antigen-presenting cells, promoting innate (NK, macrophage) and adaptive (T cell-mediated)

destruction of tumors.

The

oldest form of cancer immunotherapy involves the provision of decoy danger signals from bacteria. It was based on the long-standing observation

of tumor regression in the setting of bacterial infection. Treatment of cancer patients with heat-killed bacteria (“Coley’s

toxins”) was established in 1891 and used for 70 years with significant success. For example, ≥5-year survival was reported

for 45% of 432 inoperable sarcoma, lymphoma, melanoma, and carcinoma patients. Despite this success, several limitations led to the abandonment

of this approach by the pharmaceutical industry. Although there was an indication that Coley’s toxins worked best when administered

intravenously (i.v.), it was too toxic when given by this route, limiting the approach to local administration, which produced highly

variable results. Another limitation was lack of knowledge about the mechanism of action, preventing optimization and standardization

of manufacturing, leading to another source of variability in clinical response. Due to this high variability, Coley’s toxins was

not grandfathered-in as an approved drug by the FDA in 1963 and was supplanted by radiation and chemotherapy, despite the fact that these

more modern approaches rarely produce durable responses in advanced cancer patients. Scientists now understand the mechanism of action

of Coley’s toxins. Gram-negative bacteria contain multiple immune-stimulating danger signals, including TLR agonists such as lipopolysaccharide

(LPS). Bacteria and purified or mono-specific TLR agonists, including LPS derivatives, have been validated and approved for prevention

and treatment of early stage cancer. However, a safe and effective TLR agonist-based approach for advanced cancer has been elusive, possibly

due to limitations in the ability of intratumorally administered, mono-specific TLR agonists to induce potent, systemic anti-tumor immune

responses. In addition, the intratumoral approach is not feasible with all tumor types or patients. Our hypothesis is that an effective

TLR agonist-based immunotherapy for advanced cancer will require invention of a packaged, multi-TLR agonist or multi-danger signal product

that is modified or attenuated to allow safe i.v. administration.

Our

Approach

Our

patented approach is based on the hypothesis that efficient activation of both innate and adaptive immune cells and associated anti-tumor

immune responses can be achieved by using intact bacteria, containing multiple PAMPs, which have been attenuated so that they can be

administered safely intravenously. Because LPS appears to be the most important contributor to both toxicity and efficacy, our patented

product candidates are single strains of killed, non-pathogenic Gram-negative bacteria that have been treated in an effort to kill the

bacteria and significantly reduce, but not completely eliminate, the cell surface LPS-endotoxin activity. Our product candidates are

designed to have enhanced sufficient residual LPS to synergize with other PAMPs in the bacteria to efficiently prime innate and adaptive

immune pathways. This approach has led to broad anti-tumor responses, including synergistic regressions and durable responses with five

different classes of existing anti-tumor agents, in preclinical models, including checkpoint therapy, targeted antibody therapy and low-dose

chemotherapy. Tumor eradication by our technology is designed to produce both innate and adaptive immunological memory and, importantly,

not require provision of an exogenous tumor antigen, potentially due to the ability of LPS and other PAMPS to activate dendritic cells

that have already captured a tumor antigen.

All

immune cells can participate in killing of tumors and viruses. As illustrated below, current therapies activate only one or a small subset

of both pathways and cure only a small percentage of patients.

Our

technology, however, is designed to synergize with existing therapies to activate both innate and adaptive immune cells, inducing efficient

anti- tumor immune responses with a wide safety margin. Induction of adaptive anti-tumor immune responses and immunological memory by

our technology does not require an exogenous tumor antigen.

Innate

and adaptive immune responses require identification of a tumor as foreign or not self. However, most steps required for migration and

activation of immune cells are unrelated to the tumor or are tumor non-specific. All innate and adaptive non-specific steps are induced

or promoted by immune system “danger signal” molecules, such as those found in our bacteria. Bacteria-derived danger signals

are also able to enhance the processing and recognition of tumor antigens, which are frequently present, but not “seen” by

the immune system.

Results

Preclinical

Trials

In

preclinical models, Indaptus treated bacteria induced less systemic toxicity than untreated bacteria but were still able to activate

innate and adaptive immune responses. Despite exhibiting reduced in vivo pyrogenicity and a higher maximally tolerated dose, our bacteria

were able to induce secretion of most cytokines and chemokines from mouse and human immune cells in vitro at levels comparable to those

seen with untreated bacteria. Our bacteria were also able to synergize with human immune cells to kill human tumor cells in vitro.

We

have observed significant single agent anti-tumor activity and/or combination therapy-mediated regression with durable responses in established

non-Hodgkin’s lymphoma, as well as colorectal, hepatocellular and pancreatic carcinoma in preclinical syngeneic and human tumor

xenograft models. Our bacteria synergized with each of five different classes of approved agents in preclinical models, including checkpoint

therapy, targeted antibodies, low-dose chemotherapy, non-steroidal anti-inflammatory drugs (NSAIDs) and cytokines to induce tumor regression,

providing significant flexibility for targeting of diverse types of cancer. Our technology is designed to eradicate tumors via activation

of both innate (NK cell) and adaptive (CD4+ and CD8+ T cell) mechanisms, with the goal of producing both innate and adaptive immunological

memory. In our preclinical studies, tumor eradication occurred at non-toxic doses of our bacteria, with a very wide (10 to ≥33-fold)

therapeutic index. Notable mechanism of action information has also been obtained, via gene expression analysis with treated tumors and

plasma cytokine analysis, demonstrating that our combination technology has the potential to turn “cold” tumors into “hot”

tumors and induce, activate or recruit innate and adaptive genes, cells and pathways. Immune cell pre-depletion studies have demonstrated

that both innate (NK) and adaptive (CD4 T and CD8 T) immune cells are involved in tumor eradication. We have also demonstrated significant

single agent activity against chronic Hepatitis B virus (HBV) and human immunodeficiency virus (HIV) infection in standard preclinical

models.

We

have carried out successful cGMP manufacturing and stability studies with our lead product candidate, Decoy20. In addition, IND-enabling

multi-dose toxicology studies have been completed and did not produce sustained induction of factors that are associated with cytokine

release syndrome.

The

chart above demonstrates that our bacteria synergize with Anti-PD-1 Checkpoint therapy to regress established mouse hepatocellular carcinoma

(HCC) Tumors. All mice (all groups) received a low-dose, non-steroidal anti-inflammatory drug (NSAID/Indomethacin), which increases the

number of regressions in the combination setting. Most regressions were durable, with 5/6 combination regressions stable through termination

at Day 91 and in a repeat experiment through termination at Day 143 (see next Figure below) (CR = complete response or complete regression).

The repeat experiment also produced 5/6 or 6/6 durable regressions per group over a 33-fold Indaptus concentration range and an absence

of safety concerns, demonstrating a very wide therapeutic index. Similar tumor eradication results have been obtained by combining our

bacteria with low-dose chemotherapy in a mouse non-Hodgkin’s lymphoma model. Eradication of established non-Hodgkin’s lymphoma

tumors by our technology has also been observed with human tumor xenografts, via activation of the innate immune system. Development

and preclinical efficacy characterization of a systemically administered multiple Toll-like receptor (TLR) agonist for antitumor immunotherapy

[abstract]. In: Proceedings of the Fourth CRI-CIMT-EATI-AACR International Cancer Immunotherapy Conference: Translating Science into

Survival; Sept 30-Oct 3, 2018; New York, NY. Philadelphia (PA): AACR; Cancer Immunol Res 2019;7(2 Suppl):Abstract

nr B178.

The

chart above illustrates that the synergistic tumor eradication by our technology and Anti-PD-1 produces immunological memory. Established

tumors were regressed in 11 mice by combination treatment as in the Figure above and then the mice were re-challenged with fresh HCC

tumor cells, without further treatment. All of the new tumors were rejected. Similar results have been obtained by combining our bacteria

with low-dose chemotherapy in a non-Hodgkin’s lymphoma model.

Clinical

Trial

In

May 2022, the FDA allowed us to proceed under our IND application for a Phase 1 clinical trial in patients with advanced solid tumors

where currently approved therapies have failed, and in December 2022, we initiated this Phase 1 clinical trial which is an open label,

multi-center, dose escalation and expansion, single arm (monotherapy) study conducted in 2 parts. The Phase 1 study has begun with a

single dose escalation, which is planned to be followed by an expansion part with continuous weekly administration of Decoy20. The study

is enrolling patients with advanced/metastatic solid tumors, who have exhausted approved treatment options. The study’s objectives

are to assess the safety and tolerability of Decoy20, to determine the maximum tolerated dose and recommended Phase 2 dose, as well as

to assess Decoy20 pharmacokinetics PK, pharmacodynamics and clinical activity. The primary endpoint of the study is incidence, relatedness

and severity of adverse events and treatment-emergent adverse events and determining the number of subjects per cohort with dose limiting

toxicity-based adverse events. Secondary endpoints include the incidence of anti-drug antibodies and neutralizing antibodies pre- and

post-treatment, change in Decoy20 PK parameters over time, objective response rate in subjects with measurable disease and duration of

response. In August 2023, we completed the first cohort of patients who received a single dose in Part 1 of the Phase 1 clinical trial.

Four patients were enrolled and evaluable in the first cohort. Overall, patients experienced symptoms or adverse events (AEs) that were

short-lived and consistent with the mechanism of action of Decoy20. In September 2023, we advanced into the second cohort of the Phase

1 clinical trial after receiving authorization from the Safety Review Committee. In early March 2024, we completed the second cohort

of patients who received a single dose in Part 1 of the Phase 1 clinical trial and, following authorization from the Safety Review Committee,

advanced into the multi-dosing cohort of the Phase 1 clinical trial. The second cohort dose was a reduction from the dosing in the first

cohort based on the significant pharmacodynamic effect seen with the first cohort and anticipated optimal Decoy20 safety profile for

both multi-dosing and combination approaches.

Business

Strategy

Our

mission is to enhance and expand curative cancer immunotherapy for patients with unresectable or metastatic solid tumors and lymphomas,

which are responsible for approximately 90% of all cancer deaths.

Our

business strategy includes:

● advancing to the expansion portion of the Phase 1 clinical trial for Decoy20;

● maintaining, expanding and protecting our intellectual property portfolio; and

Competitive

Advantages

Our

bacteria contain multiple constituents, capable of priming or activating many of the cellular components of both innate and adaptive

immunity, but have been attenuated by a patented process to reduce the potential for over-stimulation of the immune system and

consequential induction of undesirable autoimmune reactions. Our bacteria are also likely to be cleared very quickly by the liver

and spleen, which may further reduce the risk of non-specific autoimmune side effects, relative to other types of immunotherapy that

are designed for continuous exposure. We believe a short exposure of our products is sufficient to act alone and as a

“primer” to enhance other products. Additionally, our products can be manufactured by a highly cost-efficient process,

potentially providing accelerated patient access in both developed and developing geographical regions.

Governmental

Regulation

Among

others, the FDA and comparable regulatory authorities in state and local jurisdictions and in other countries impose substantial and

burdensome requirements upon companies involved in the clinical development, manufacture, marketing and distribution of drugs such as

those we are developing. These agencies and other federal, state and local entities regulate, among other things, the research and development,

testing, manufacture, quality control, safety, effectiveness, labeling, storage, record keeping, approval, advertising and promotion,

distribution, post-approval monitoring and reporting, sampling and export and import of our product candidates.

U.S.

Regulation of Drugs and Biologics

In

the United States, the FDA regulates drugs under the Federal Food, Drug, and Cosmetic Act (FDCA) and its implementing regulations, and

biologics under the FDCA and the Public Health Service Act (PHSA) and its implementing regulations. FDA approval is required before any

new unapproved drug or dosage form, including a new use of a previously approved drug, can be marketed in the United States. Drugs and

biologics are also subject to other federal, state, and local statutes and regulations. The process required by the FDA before product

candidates may be marketed in the United States generally involves the following:

Once

a product candidate is identified for development, it enters the preclinical testing stage. Preclinical tests include laboratory evaluations

of product chemistry, toxicity and formulation, as well as animal studies. An IND sponsor must submit the results of the preclinical

tests, together with manufacturing information and analytical data, to the FDA as part of an IND. An IND is a request for authorization

from the FDA to administer an investigational drug product to humans. An IND will also include a protocol detailing, among other things,

the objectives of the clinical trial, the parameters to be used in monitoring safety, and the effectiveness criteria to be evaluated,

if the trial includes an efficacy evaluation. Some preclinical testing may continue even after the IND is submitted. The IND automatically

becomes effective 30 days after receipt by the FDA, unless the FDA, within the 30-day time period, places the clinical trial on a clinical

hold. In such a case, the IND sponsor and the FDA must resolve any outstanding concerns before the clinical trial can begin. Clinical

holds also may be imposed by the FDA at any time before or during clinical trials due to safety concerns about on-going or proposed clinical

trials or non-compliance with specific FDA requirements, and the trials may not begin or continue until the FDA notifies the sponsor

that the hold has been lifted.

All

clinical trials must be conducted under the supervision of one or more qualified investigators in accordance with GCPs, which include

the requirement that all research subjects provide their informed consent in writing for their participation in any clinical trial. Clinical

trials must be conducted under protocols detailing the objectives of the trial, dosing procedures, subject selection and exclusion criteria

and the safety and effectiveness criteria to be evaluated. Each protocol must be submitted to the FDA as part of the IND, and a separate

submission to the existing IND must be made for each successive clinical trial conducted during product development and for any subsequent

protocol amendments. While the IND is active, progress reports summarizing the results of the clinical trials and nonclinical studies

performed since the last progress report, among other information, must be submitted at least annually to the FDA, and written IND safety

reports must be submitted to the FDA and investigators for serious and unexpected suspected adverse events, findings from other studies

suggesting a significant risk to humans exposed to the same or similar drugs, findings from animal or in vitro testing suggesting a significant

risk to humans, and any clinically important increased incidence of a serious suspected adverse reaction compared to that listed in the

protocol or investigator brochure.

Furthermore,

an independent IRB at each institution participating in the clinical trial must review and approve each protocol before a clinical trial

commences at that institution and must also approve the information regarding the trial and the consent form that must be provided to

each trial subject or his or her legal representative, monitor the study until completed and otherwise comply with IRB regulations. The

FDA or the sponsor may suspend a clinical trial at any time on various grounds, including a finding that the research subjects or patients

are being exposed to an unacceptable health risk. Similarly, an IRB can suspend or terminate approval of a clinical trial at its institution

if the clinical trial is not being conducted in accordance with the IRB’s requirements or if the drug has been associated with

unexpected serious harm to patients. In addition, some clinical trials are overseen by an independent group of qualified experts organized

by the sponsor, known as a data safety monitoring board or committee. Depending on its charter, this group may determine whether a trial

may move forward at designated check points based on access to certain data from the trial. There are also requirements governing the

reporting of ongoing clinical studies and clinical study results to public registries, including clinicaltrials.gov.

The

clinical investigation of a drug is generally divided into three phases. Although the phases are usually conducted sequentially, they

may overlap or be combined.

Post-approval

trials, sometimes referred to as Phase 4 studies, may be conducted after initial marketing approval. These trials are used to gain additional

experience from the treatment of patients in the intended therapeutic indication. In certain instances, the FDA may mandate the performance

of Phase 4 clinical trials as a condition of approval of an NDA.

During

the development of a product candidate, sponsors are given opportunities to meet with the FDA at certain points. These points may be

prior to submission of an IND, at the end of Phase 2, and before an NDA or BLA is submitted. Meetings at other times may be requested.

These meetings can provide an opportunity for the sponsor to share information about the data gathered to date, for the FDA to provide

advice, and for the sponsor and the FDA to reach agreement on the next phase of development. Concurrent with clinical trials, companies

usually complete additional animal studies and must also develop additional information about the chemistry and physical characteristics

of the drug and finalize a process for manufacturing the product in commercial quantities in accordance with cGMPs. The manufacturing

process must be capable of consistently producing quality batches of the product candidate and, among other things, the manufacturer

must develop methods for testing the identity, strength, quality and purity of the final drug. In addition, appropriate packaging must

be selected and tested, and stability studies must be conducted to demonstrate that the product candidate does not undergo unacceptable

deterioration over its shelf life.

NDA

and BLA Review Process

Assuming

successful completion of all required testing in accordance with all applicable regulatory requirements, the results of product development,

nonclinical studies and clinical trials are submitted to the FDA as part of an NDA or BLA requesting approval to market the product for

one or more indications. The NDA or BLA must include all relevant data available from pertinent preclinical studies and clinical trials,

including negative or ambiguous results as well as positive findings, together with detailed information relating to the product’s

chemistry, manufacturing and controls and proposed labeling, among other things. Data can come from company-sponsored clinical studies

intended to test the safety and effectiveness of the product, or from a number of alternative sources, including studies initiated and

sponsored by investigators. The submission of an NDA or BLA requires payment of a substantial application user fee to the FDA, unless

a waiver or exemption applies.

In

addition, under the Pediatric Research Equity Act, or PREA, an NDA or BLA or supplement to an NDA or BLA must contain data to assess

the safety and effectiveness of the biological product candidate for the claimed indications in all relevant pediatric subpopulations

and to support dosing and administration for each pediatric subpopulation for which the product is safe and effective. The Food and Drug

Administration Safety and Innovation Act requires that a sponsor who is planning to submit a marketing application for a drug or biological

product that includes a new active ingredient, new indication, new dosage form, new dosing regimen or new route of administration submit

an initial pediatric study plan within sixty days after an end-of-Phase 2 meeting or as may be agreed between the sponsor and FDA. Unless

otherwise required by regulation, PREA does not apply to any drug or biological product for an indication for which orphan designation

has been granted.

Within

60 days following submission of the application, the FDA reviews the submitted BLA or NDA to determine if the application is substantially

complete before the agency accepts it for filing. The FDA may refuse to file any NDA or BLA that it deems incomplete or not properly

reviewable at the time of submission and may request additional information. In this event, the NDA or BLA must be resubmitted with the

additional information. Once an NDA or BLA has been accepted for filing, the FDA’s goal is to review standard applications within

ten months after the filing date, or, if the application qualifies for priority review, six months after the FDA accepts the application

for filing. In both standard and priority reviews, the review process may also be extended by FDA requests for additional information

or clarification. The FDA reviews an NDA to determine, among other things, whether a product candidate is safe and effective for its

intended use and whether its manufacturing is sufficient to assure and preserve the product’s identity, strength, quality and purity.

The FDA reviews a BLA to determine, among other things, whether a product candidate is safe, pure and potent and the facility in which

it is manufactured, processed, packed or held meets standards designed to assure the product’s continued safety, purity and potency.

When reviewing an NDA or BLA, the FDA may convene an advisory committee to provide clinical insight on application review questions.

The FDA is not bound by the recommendations of an advisory committee, but it considers such recommendations carefully when making decisions.

Before

approving an NDA or BLA, the FDA will typically inspect the facility or facilities where the product is manufactured. The FDA will not

approve an application unless it determines that the manufacturing processes and facilities are in compliance with cGMP requirements

and adequate to assure consistent production of the product within required specifications. Additionally, before approving an NDA or

BLA, the FDA will typically inspect one or more clinical sites to assure compliance with GCP.

After

the FDA evaluates the NDA or BLA and conducts inspections of manufacturing facilities where the investigational product and/or its drug

substance will be produced, the FDA may issue an approval letter or a Complete Response Letter, or CRL. An approval letter authorizes

commercial marketing of the product with specific prescribing information for specific indications. A CRL indicates that the review cycle

of the application is complete, and the application will not be approved in its present form. A CRL usually describes the specific deficiencies

in the NDA or BLA identified by the FDA and may require additional clinical data, including additional clinical trials, or other significant

and time-consuming requirements related to clinical trials, nonclinical studies or manufacturing. If a CRL is issued, the sponsor must

resubmit the NDA or BLA, addressing all of the deficiencies identified in the letter, or withdraw the application. Even if such data

and information are submitted, the FDA may decide that the NDA or BLA does not satisfy the criteria for approval.

If

regulatory approval of a product is granted, such approval will be granted for particular indications and may entail limitations on the

indicated uses for which such product may be marketed. For example, the FDA may approve the NDA or BLA with a Risk Evaluation and Mitigation

Strategy, or REMS, to ensure the benefits of the product outweigh its risks. A REMS is a safety strategy to manage a known or potential

serious risk associated with a product and to enable patients to have continued access to such medicines by managing their safe use,

and could include medication guides, physician communication plans, or elements to assure safe use, such as restricted distribution methods,

patient registries and other risk minimization tools. The FDA also may condition approval on, among other things, changes to proposed

labeling or the development of adequate controls and specifications. The FDA may also require one or more Phase 4 post-market studies

and surveillance to further assess and monitor the product’s safety and effectiveness after commercialization, and may limit further

marketing of the product based on the results of these post-marketing studies.

Expedited

Development and Review Programs

The

FDA offers a number of expedited development and review programs for qualifying product candidates. For example, the fast track program

is intended to expedite or facilitate the process for reviewing new products that meet certain criteria. Specifically, product candidates

are eligible for fast track designation if they are intended to treat a serious or life-threatening disease or condition and demonstrate

the potential to address unmet medical needs for the disease or condition. Fast track designation applies to the combination of the product

candidate and the specific indication for which it is being studied. The sponsor of a fast track product candidate has opportunities

for more frequent interactions with the review team during product development and, once an NDA or BLA is submitted, the application

may be eligible for priority review. A fast track product candidate may also be eligible for rolling review, where the FDA may consider

for review sections of the NDA or BLA on a rolling basis before the complete application is submitted, if the sponsor provides a schedule

for the submission of the sections of the NDA or BLA, the FDA agrees to accept sections of the NDA or BLA and determines that the schedule

is acceptable, and the sponsor pays any required user fees upon submission of the first section of the NDA or BLA.

A

product candidate intended to treat a serious or life-threatening disease or condition may also be eligible for breakthrough therapy

designation to expedite its development and review. A product candidate can receive breakthrough therapy designation if preliminary clinical

evidence indicates that the product candidate, alone or in combination with one or more other drugs or biologics, may demonstrate substantial

improvement over existing therapies on one or more clinically significant endpoints, such as substantial treatment effects observed early

in clinical development. The designation includes all of the fast track program features, as well as more intensive FDA interaction and

guidance beginning as early as Phase 1 and an organizational commitment to expedite the development and review of the product candidate,

including involvement of senior managers.

Any

marketing application for a drug or biologic submitted to the FDA for approval, including a product candidate with a fast track designation

and/or breakthrough therapy designation, may be eligible for other types of FDA programs intended to expedite the FDA review and approval

process, such as priority review. A product candidate is eligible for priority review if it has the potential to provide a significant

improvement in the treatment, diagnosis or prevention of a serious disease or condition. For new-molecular-entity NDAs and original BLAs,

priority review designation means the FDA’s goal is to take action on the marketing application within six months of the 60-day

filing date (as compared to ten months under standard review).

Additionally,

depending on the design of the applicable clinical trials, product candidates studied for their safety and effectiveness in treating

serious or life-threatening diseases or conditions may receive accelerated approval upon a determination that the product candidate has

an effect on a surrogate endpoint that is reasonably likely to predict clinical benefit, or on a clinical endpoint that can be measured

earlier than irreversible morbidity or mortality, that is reasonably likely to predict an effect on irreversible morbidity or mortality

or other clinical benefit, taking into account the severity, rarity, or prevalence of the condition and the availability or lack of alternative

treatments. As a condition of accelerated approval, the FDA will generally require the sponsor to perform adequate and well-controlled

confirmatory clinical studies to verify and describe the anticipated effect on irreversible morbidity or mortality or other clinical

benefit, and may require that such confirmatory studies be underway before granting any accelerated approval. Products receiving accelerated

approval may be subject to expedited withdrawal procedures if the sponsor fails to conduct the required confirmatory studies in a timely

manner or if such studies fail to verify the predicted clinical benefit. In addition, the FDA currently requires as a condition for accelerated

approval pre-approval of promotional materials, which could adversely impact the timing of the commercial launch of the product.

Fast

track designation, breakthrough therapy designation, priority review, and accelerated approval do not change the standards for approval

but may expedite the development or approval process. Even if a product qualifies for one or more of these programs, the FDA may later

decide that the product no longer meets the conditions for qualification or decide that the time period for FDA review or approval will

not be shortened. We may explore some of these opportunities for our product candidates as appropriate.

Orphan

drug designation

Under

the Orphan Drug Act, the FDA may grant orphan designation to a drug or biologic intended to treat a rare disease or condition, which

is a disease or condition that affects fewer than 200,000 individuals in the United States or, if it affects more than 200,000 individuals

in the United States, there is no reasonable expectation that the cost of developing and making a drug product available in the United

States for this type of disease or condition will be recovered from sales of the product. Orphan designation must be requested before

submitting an NDA or BLA. After the FDA grants orphan designation, the identity of the therapeutic agent and its potential orphan use

are disclosed publicly by the FDA. Orphan designation does not convey any advantage in or shorten the duration of the regulatory review

and approval process.

If

a product that has orphan designation subsequently receives the first FDA approval for the disease or condition for which it has such

designation, the product is entitled to orphan product exclusivity, which means that the FDA may not approve any other applications to

market the same drug or biologic for the same disease or condition for seven years, except in limited circumstances, such as a showing

of clinical superiority to the product with orphan exclusivity or inability to manufacture the product in sufficient quantities. The

designation of such drug or biologic also entitles a party to financial incentives such as opportunities for grant funding towards clinical

trial costs, tax advantages and user-fee waivers. However, competitors, may receive approval of different products for the disease or

condition for which the orphan product has exclusivity or obtain approval for the same product but for a different disease or condition

for which the orphan product has exclusivity. Orphan exclusivity also could block the approval of a competing product for seven years

if a competitor obtains approval of the “same drug,” as defined by the FDA, or if the active ingredient of the product candidate

is determined to be contained within the competitor’s product for the same disease or condition. In addition, if an orphan designated

product receives marketing approval for a disease or condition broader than what is designated, it may not be entitled to orphan exclusivity.

Post-Approval

Requirements

Any

products manufactured or distributed pursuant to FDA approvals are subject to pervasive and continuing regulation by the FDA, including,

among other things, requirements relating to record-keeping, reporting of adverse experiences, periodic reporting, product sampling and

distribution, and advertising and promotion of the product. After approval, most changes to the approved product, such as adding new

indications or other labeling claims, are subject to prior FDA review and approval. There also are continuing user fee requirements,

under which the FDA assesses an annual program fee for each product identified in an approved NDA or BLA. Drug and biologic manufacturers

and their subcontractors are required to register their establishments with the FDA and certain state agencies, and are subject to periodic

unannounced inspections by the FDA and certain state agencies for compliance with cGMPs, which impose certain procedural and documentation

requirements upon us and our third-party manufacturers. Changes to the manufacturing process are strictly regulated, and, depending on

the significance of the change, may require prior FDA approval before being implemented. FDA regulations also require investigation and

correction of any deviations from cGMPs and impose reporting requirements upon us and any third-party manufacturers that we may decide

to use. Accordingly, manufacturers must continue to expend time, money and effort in the area of production and quality control to maintain

compliance with cGMPs and other aspects of regulatory compliance.

The

FDA may withdraw approval if compliance with regulatory requirements and standards is not maintained or if problems occur after the product

reaches the market. Later discovery of previously unknown problems with a product, including adverse events of unanticipated severity

or frequency, or with manufacturing processes, or failure to comply with regulatory requirements, may result in revisions to the approved

labeling to add new safety information; imposition of post-market studies or clinical studies to assess new safety risks; or imposition

of distribution restrictions or other restrictions under a REMS program. Other potential consequences include, among other things:

● fines, warning letters or holds on post-approval clinical studies;

● injunctions or the imposition of civil or criminal penalties.

The

FDA closely regulates the marketing, labeling, advertising and promotion of drug products and biologics. A company can make only those

claims relating to safety and efficacy, purity and potency that are approved by the FDA and in accordance with the provisions of the

approved label. The FDA and other agencies actively enforce the laws and regulations prohibiting the promotion of off-label uses. Failure

to comply with these requirements can result in, among other things, adverse publicity, warning letters, corrective advertising and potential

civil and criminal penalties. Physicians may prescribe legally available products for uses that are not described in the product’s

labeling and that differ from those tested by us and approved by the FDA. Such off-label uses are common across medical specialties.

Physicians may believe that such off-label uses are the best treatment for many patients in varied circumstances. The FDA does not regulate

the behavior of physicians in their choice of treatments. The FDA does, however, restrict manufacturer’s communications on the

subject of off-label use of their products.

Drug

Product Marketing Exclusivity

Market

exclusivity provisions authorized under the FDCA can delay the submission or the approval of certain marketing applications. For example,

the FDCA provides a five-year period of non-patent data exclusivity within the United States to the first applicant to obtain approval

of an NDA for a new chemical entity. A drug is a new chemical entity if the FDA has not previously approved any other new drug containing

the same active moiety, which is the molecule or ion responsible for the action of the drug substance. During the exclusivity period,

the FDA may not approve or even accept for review an abbreviated new drug application, or ANDA, or an NDA submitted under Section 505(b)(2),

or 505(b)(2) NDA, submitted by another company for another drug based on the same active moiety, regardless of whether the drug is intended

for the same indication as the original innovative drug or for another indication, where the applicant does not own or have a legal right

of reference to all the data required for approval. However, an application may be submitted after four years if it contains a certification

of patent invalidity or non-infringement to one of the patents listed with the FDA by the innovator NDA holder.

The

FDCA alternatively provides three years of non-patent exclusivity for an NDA, or supplement to an existing NDA if new clinical investigations,

other than bioavailability studies, that were conducted or sponsored by the applicant are deemed by the FDA to be essential to the approval

of the application, for example new indications, dosages or strengths of an existing drug. This three-year exclusivity covers only the

modification for which the drug received approval on the basis of the new clinical investigations and does not prohibit the FDA from

approving ANDAs or 505(b)(2) NDAs for drugs containing the active agent for the original indication or condition of use. Five-year and

Source: SEC EDGAR (public domain) · 10-K for the period ended 2023-12-31, filed 2024-03-13 · accession 0001493152-24-009769

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